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活性氧会留下一条损伤轨迹,揭示光系统 II 中的水通道。

Reactive oxygen species leave a damage trail that reveals water channels in Photosystem II.

机构信息

Department of Biology, Washington University, St. Louis, MO 63130, USA.

Department of Chemistry, Washington University, St. Louis, MO 63130, USA.

出版信息

Sci Adv. 2017 Nov 17;3(11):eaao3013. doi: 10.1126/sciadv.aao3013. eCollection 2017 Nov.

Abstract

Photosystem II (PSII), a unique membrane-bound oxidoreductase, catalyzes light-driven oxidation of water to molecular oxygen. Although high-resolution structures of PSII are known, the exact path of the substrate water molecules to the catalytic MnCaO center within the PSII complex remains poorly understood. PSII produces reactive oxygen species (ROS), responsible for the frequent damage and turnover of this megacomplex that occur under physiological conditions. Such ROS are known to specifically modify PSII proteins. Using high-resolution tandem mass spectrometry, we identified oxidative modifications on 36 amino acid residues on the lumenal side of PSII, in the core PSII proteins D1, D2, and CP43 of the cyanobacterium sp. PCC 6803. Remarkably, these oxidized residues clustered into three nearly continuous formations, tracking the pathways of ROS diffusion from the manganese center all the way out to the surface of PSII. We suggest that these profiles of oxidized residues reveal the locations of water channels within PSII. Our results provide the most comprehensive experimental evidence to date of physiologically relevant oxidized residues in PSII and illuminate three possible channels for water between the catalytic Mn cluster in the PSII complex and the bulk medium around it.

摘要

光系统 II(PSII)是一种独特的膜结合氧化还原酶,催化水的光驱动氧化生成分子氧。尽管已经知道 PSII 的高分辨率结构,但 PSII 复合物内的基质水分子到催化 MnCaO 中心的确切路径仍知之甚少。PSII 会产生活性氧物种(ROS),这是导致该大型复合物在生理条件下频繁受损和周转的原因。已知这种 ROS 会特异性修饰 PSII 蛋白。我们使用高分辨率串联质谱法,在蓝细菌 sp. PCC 6803 的核心 PSII 蛋白 D1、D2 和 CP43 的 PSII 内腔侧鉴定到 36 个氨基酸残基的氧化修饰。值得注意的是,这些氧化残基聚集在三个几乎连续的区域中,追踪 ROS 从锰中心扩散到 PSII 表面的途径。我们认为这些氧化残基的分布揭示了 PSII 内水通道的位置。我们的结果提供了迄今为止 PSII 中与生理相关的氧化残基的最全面的实验证据,并阐明了 PSII 复合物中的催化 Mn 簇与周围介质之间的三种可能的水通道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/086a/5693562/e3e241add8af/aao3013-F1.jpg

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